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Numerical simulation of left ventricular assist device implantations: Comparing the ascending and the descending aorta cannulations

机译:左心室辅助装置植入的数值模拟:升主动脉插管与降主动脉插管的比较

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摘要

In this work we present numerical simulations of continuous flow left ventricle assist device implantation with the aim of comparing difference in flow rates and pressure patterns depending on the location of the anastomosis and the rotational speed of the device. Despite the fact that the descending aorta anastomosis approach is less invasive, since it does not require a sternotomy and a cardiopulmonary bypass, its benefits are still controversial. Moreover, the device rotational speed should be correctly chosen to avoid anomalous flow rates and pressure distribution in specific location of the cardiovascular tree. With the aim of assessing the differences between these two approaches and device rotational speed in terms of flow rate and pressure waveforms, we set up numerical simulations of network of one-dimensional models where we account for the presence of an outflow cannula anastomosed to different locations of the aorta. Then, we use the resulting network to compare the results of the two different cannulations for several stages of heart failure and different rotational speed of the device. The inflow boundary data for the heart and the cannulas are obtained from a lumped parameters model of the entire circulatory system with an assist device, which is validated with clinical data. The results show that ascending and descending aorta cannulations lead to similar waveforms and mean flow rate in all the considered cases. Moreover, regardless of the anastomosis region, the rotational speed of the device has an important impact on wave profiles; this effect is more pronounced at high RPM.
机译:在这项工作中,我们提出了连续流左心室辅助装置植入的数值模拟,目的是根据吻合位置和装置的旋转速度比较流速和压力模式的差异。尽管降主动脉吻合术的侵入性较小,但由于不需要胸骨切开术和体外循环,因此其益处仍存在争议。此外,应正确选择设备转速,以避免在心血管树的特定位置出现异常流速和压力分布。为了评估这两种方法之间的差异以及设备转速在流速和压力波形方面的差异,我们建立了一维模型网络的数值模拟,其中我们考虑了在不同位置吻合的流出套管的存在主动脉。然后,我们使用结果网络比较心衰几个阶段和设备不同转速的两种不同插管的结果。心脏和套管的流入边界数据是通过带有辅助装置的整个循环系统的集总参数模型获得的,该模型已通过临床数据验证。结果表明,在所有考虑的情况下,升主动脉插管和降主动脉插管会产生相似的波形和平均流速。此外,无论吻合区域如何,装置的旋转速度都会对波形产生重要影响。在高RPM时,这种影响更为明显。

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